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Microdrops Evaporating on AFM Cantilevers

机译:AFM悬臂上蒸发的微滴

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摘要

The kinetics of evaporation or drying of microscopic, sessile drops from solid surfaces is relevant in a variety of technological processes, such as printing, painting, and heat-transfer applications, besides being of fundamental interest. Drop evaporation has been commonly observed by means of video-microscope imaging, by ultra-precision weighing with electronic microbalances or with quartz crystal microbalances (QCM). Abundant information was gained over the years with these techniques, so that the evaporation of macroscopic drops of simple liquids from inert surfaces is nowadays well understood. The same techniques are, however, not applicable to microscopic drops. Furthermore they do not directly provide a measure of the interfacial stresses arising at the contact area between liquid and solid, which are known to play a key role in the evaporation kinetics of small drops. Here I show how the use of atomic force microscope (AFM) cantilevers as sensitive stress, mass, and temperature sensors can be employed to monitor the evaporation of microdrops of water. Starting drop diameters are always below 100μm. The foremost interest lies in exploring the last stages of the evaporation process.
机译:从固体表面蒸发或干燥的微小无柄液滴的动力学除涉及基本目的外,还与多种技术过程(例如印刷,喷漆和传热应用)相关。通常通过视频显微镜成像,使用电子微量天平或石英晶体微量天平(QCM)进行超精密称重来观察液滴的蒸发。这些年来,通过这些技术获得了丰富的信息,因此,如今人们已经很容易理解从惰性表面蒸发掉的宏观液滴。但是,相同的技术不适用于微滴。此外,它们没有直接提供在液体和固体之间的接触区域产生的界面应力的量度,已知该界面应力在小液滴的蒸发动力学中起关键作用。在这里,我展示了如何使用原子力显微镜(AFM)的悬臂梁作为敏感的应力,质量和温度传感器来监测水微滴的蒸发。起始墨滴直径始终小于100μm。最重要的兴趣在于探索蒸发过程的最后阶段。

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